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Comparing Anode Gas Recirculation with Hydrogen Purge and Bleed in a Novel PEMFC Laboratory Test Cell Configuration

机译:在新型PEMFC实验室测试池配置中比较阳极气体再循环与氢气吹扫和排气

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In automotive-type polymer electrolyte membrane fuel cell (PEMFC) systems, impurities and inert gases accumulate in the anode gas recirculation loop. Therefore, the impurity limits, dictated by the current hydrogen fuel specification (ISO 14687-2:2012), also require quantification with representative fuel cell test systems applying anode gas recirculation, that enables high fuel utilization rates and accumulation of impurities. We report a novel PEMFC laboratory test cell configuration mimicking automotive conditions. This setup enabled comparison of two operation modes, hydrogen bleed and purge, within 84.4%-98.6% fuel utilizations. The results indicate that similar enrichment dynamics apply to both bleed and purge modes. The configuration employed a membrane dryer to circumvent the 60 degrees C limit of commercially available recirculation pumps. The membrane dryer allows heat and humidity extraction from the anode exit gas stream, enabling the adoption of conventional recirculation pumps, minimizing water condensation, and making sampling with on-line gas analysis instruments easier. The results show that anode gas recirculation systems with hydrogen bleed can be implemented in conventional test stations by resorting to commercially available recirculation pumps. This enables realistic and cost-effective determination of impurity effects for fuel cell system development and new hydrogen fuel standards.
机译:在汽车型聚合物电解质膜燃料电池(PEMFC)系统中,杂质和惰性气体积聚在阳极气体再循环回路中。因此,由当前氢燃料规范(ISO 14687-2:2012)规定的杂质限值也需要使用具有阳极气体再循环功能的代表性燃料电池测试系统进行定量,以实现高燃料利用率和杂质积累。我们报告了模仿汽车条件的新型PEMFC实验室测试单元配置。通过此设置,可以比较两种操作模式(氢气放气和吹扫)在84.4%-98.6%的燃料利用率内。结果表明,相似的富集动力学适用于排放和吹扫模式。该配置采用膜干燥器来规避市售再循环泵的60摄氏度极限。膜干燥器可以从阳极出口气流中提取热量和湿气,从而可以采用传统的再循环泵,最大程度地减少水的冷凝,并使在线气体分析仪器的采样更加容易。结果表明,借助商业上可买到的再循环泵,可以在常规测试站中实施带有氢气排放的阳极气体再循环系统。这使得能够针对燃料电池系统开发和新的氢燃料标准对杂质影响进行现实且具有成本效益的确定。

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